首页> 美国卫生研究院文献>Plant Physiology >Evidence from Studies with Acifluorfen for Participation of a Flavin-Cytochrome Complex in Blue Light Photoreception for Phototropism of Oat Coleoptiles
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Evidence from Studies with Acifluorfen for Participation of a Flavin-Cytochrome Complex in Blue Light Photoreception for Phototropism of Oat Coleoptiles

机译:黄连细胞色素复合物参与燕麦胚芽鞘光致变色的蓝光接收与Acifluorfen研究的证据。

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摘要

The diphenyl ether acifluorfen enhances the blue light-induced absorbance change in Triton X100-solubilized crude membrane preparations from etiolated oat (Avena sativa L. cv. Lodi) coleoptiles. Enhancement of the spectral change is correlated with a change in rate of dark reoxidation of a b-type cytochrome. Similar, although smaller, enhancement was obtained with oxyfluorfen, nitrofen, and bifenox. Light-minus-dark difference spectra in the presence and absence of acifluorfen, and the dithionite-reduced-minus oxidized difference spectrum indicate that acifluorfen is acting specifically at a blue light-sensitive cytochrome-flavin complex. Sodium azide, a flavin inhibitor, decreases the light-induced absorbance change significantly, but does not affect the dark reoxidation of the cytochrome. Hence, it is acting on the light reaction, suggesting that the photoreceptor itself is a flavin. Acifluorfen sensitizes phototropism in dark-grown oat seedlings such that the first positive response occurs with blue light fluences as little as one-third of those required to elicit the same response in seedlings grown in the absence of the herbicide. Both this increase in sensitivity to light and the enhancement of the light-induced cytochrome reduction vary with the applied acifluorfen concentration in a similar manner. The herbicide is without effect either on elongation or on the geotropic response of dark-grown oat seedlings, indicating that acifluorfen is acting specifically close to, or at the photoreceptor end of, the stimulus-response chain. It seems likely that the flavin-cytochrome complex serves to transduce the light signal into curvature in phototropism in oats, with the flavin moiety itself serving as the photoreceptor.
机译:在苯硫醚化燕麦的Triton X100增溶的粗制膜制剂中,二苯醚acifluorfen增强了蓝光诱导的吸光度变化。光谱变化的增强与b型细胞色素的黑暗再氧化速率变化相关。相似的,尽管较小,但是用氧氟芬,硝基苯酚和联苯醚获得了增强。在存在和不存在acifluorfen的情况下,光-暗-差异图谱以及连二亚硫酸盐还原-负氧化差异图谱表明acifluorfen专门作用于对蓝光敏感的细胞色素-黄素络合物。叠氮化钠是一种黄素抑制剂,可显着降低光诱导的吸光度变化,但不影响细胞色素的黑暗再氧化。因此,它作用于光反应,表明感光体本身是黄素。 Acifluorfen可以提高深色燕麦幼苗的向光性,因此在没有使用除草剂的情况下,蓝光通量所产生的第一个阳性反应的影响仅为引发相同反应所需的三分之一。对光的敏感性的这种增加和光诱导的细胞色素减少的增强两者都以相似的方式随所施加的氟苯氟草胺浓度而变化。除草剂对深色燕麦幼苗的伸长率或地向反应没有影响,表明除草剂阿氟氟醚的作用特别靠近刺激反应链或在其末端。黄素-细胞色素复合物似乎可以将光信号转变为燕麦中的光致弯曲曲率,其中黄素部分本身就是感光体。

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